Search results for " HE"

showing 10 items of 56203 documents

CCDC 1486911: Experimental Crystal Structure Determination

2016

Related Article: Fabian Brunner, Laura Martínez-Sarti, Sarah Keller, Antonio Pertegás, Alessandro Prescimone, Edwin C. Constable, Henk J. Bolink, Catherine E. Housecroft|2016|Dalton Trans.|45|15180|doi:10.1039/C6DT02665F

(66'-dimethyl-44'-diphenyl-22'-bipyridine)-((99-dimethyl-9H-xanthene-45-diyl)bis(diphenylphosphine))-copper(i) hexafluorophosphateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1562448: Experimental Crystal Structure Determination

2018

Related Article: Murat Alkan-Zambada, Sarah Keller, Laura Martínez-Sarti, Alessandro Prescimone, José M. Junquera-Hernández, Edwin C. Constable, Henk J. Bolink, Michele Sessolo, Enrique Ortí, Catherine E. Housecroft|2018|J.Mater.Chem.C|6|8460|doi:10.1039/C8TC02882F

(6-(phenylsulfanyl)-22'-bipyridine)-(45-bis(diphenylphosphino)-99-dimethyl-9H-xanthene)-copper(i) hexafluorophosphate dichloromethane solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1019229: Experimental Crystal Structure Determination

2015

Related Article: Andreas M. Bünzli, Edwin C. Constable, Catherine E. Housecroft, Alessandro Prescimone, Jennifer A. Zampese, Giulia Longo, Lidón Gil-Escrig, Antonio Pertegás, Enrique Ortí, Henk J. Bolink|2015|Chemical Science|6|2843|doi:10.1039/C4SC03942D

(6-Phenyl-22'-bipyridine)-bis(5'-(pyridin-2-yl)-11':3'1''-terphenyl-4'-yl)-iridium hexafluorophosphate toluene solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1562412: Experimental Crystal Structure Determination

2018

Related Article: Murat Alkan-Zambada, Sarah Keller, Laura Martínez-Sarti, Alessandro Prescimone, José M. Junquera-Hernández, Edwin C. Constable, Henk J. Bolink, Michele Sessolo, Enrique Ortí, Catherine E. Housecroft|2018|J.Mater.Chem.C|6|8460|doi:10.1039/C8TC02882F

(6-phenoxy-22'-bipyridine)-(22'-bis(diphenylphosphino)-11'-oxydibenzene)-copper(i) hexafluorophosphate dichloromethane solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1511954: Experimental Crystal Structure Determination

2016

Related Article: H. J. Bolink, E. Coronado, R. D. Costa, E. Ortí, M. Sessolo, S. Graber, K. Doyle, M. Neuburger, C. E. Housecroft, and E. C. Constable|2008|Adv.Mater.|20|3910|doi:10.1002/adma.200801322

(6-phenyl-22'-bipyridine)-bis(2-(pyridin-2-yl)phenyl)-iridium hexafluorophosphate chloroform solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 796284: Experimental Crystal Structure Determination

2011

Related Article: C.H.Devillers, A.K.D.Dime, H.Cattey, D.Lucas|2011|Chem.Commun.|47|1893|doi:10.1039/c0cc04309e

(Ethanol)-(triphenyl(porphyrin-5-yl)phosphoniumato)-magnesium(ii) hexafluorophosphate toluene solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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(H,ρ)-induced dynamics and large time behaviors

2018

In some recent papers, the so called (H,ρ)-induced dynamics of a system S whose time evolution is deduced adopting an operatorial approach, borrowed in part from quantum mechanics, has been introduced. Here, H is the Hamiltonian for S, while ρ is a certain rule applied periodically (or not) on S. The analysis carried on throughout this paper shows that, replacing the Heisenberg dynamics with the (H,ρ)-induced one, we obtain a simple, and somehow natural, way to prove that some relevant dynamical variables of S may converge, for large t, to certain asymptotic values. This cannot be so, for finite dimensional systems, if no rule is considered. In this case, in fact, any Heisenberg dynamics im…

(Hρ)-induced dynamicOperatorial modelSchrödinger and Heisenberg dynamicStressed bacterial population(Hρ)-induced dynamics; Operatorial models; Schrödinger and Heisenberg dynamics; Stressed bacterial populations; Statistics and Probability; Condensed Matter PhysicsSettore MAT/07 - Fisica Matematica
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CCDC 250973: Experimental Crystal Structure Determination

2005

Related Article: J.F.Schneider, M.Nieger, K.Nattinen, B.Lewall, E.Niecke, K.H.Dotz|2005|Eur.J.Org.Chem.|2005|1541|doi:10.1002/ejoc.200400800

(RS)-1217-Di-t-butyl-44-diphenylanthra(21-f)phenanthro(43-d)(13)-dioxepin-10131518-tetraone heptane solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 2106021: Experimental Crystal Structure Determination

2021

Related Article: Essi Taipale, Marcel Siepmann, Khai-Nghi Truong, Kari Rissanen|2021|Chem.-Eur.J.|27|17412|doi:10.1002/chem.202103152

(acetonitrile)-bis{9-[4-(pyridin-4-yl)phenyl]-9H-carbazole}-silver hexafluorophosphateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Circular RNA in Exosomes

2018

Circular RNAs (circRNAs) are a novel family of non-coding endogenous RNAs discovered in all eukaryotic cells and generated through a particular mechanism of alternative splicing called “back-splicing”. These molecules show multiple functions, by acting as modulators of gene and miRNA expression, and may have a role in several biological processes, such as cell proliferation and invasion with, tumour development and progression, and in several mechanisms underlying other diseases. Their presence has been shown to be abundant in several body fluids such as blood and saliva. Based on their biogenesis mechanism, cir- cRNAs may be categorized into five classes: exonic circRNAs, intronic circRNAs…

(circRNAs)0301 basic medicineSettore MED/06 - Oncologia MedicaAlternative splicingBiomarkerCDR1asBiologyExosomesExosomeNon-coding RNAsMicrovesiclesCell biology03 medical and health sciences030104 developmental biologyCircular RNAmicroRNASense (molecular biology)Circular RNAGeneBiogenesis
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